Su Shibo, Shen Xuegang, Shi Xinqi, Li Xin, Chen Jin, Yang Wei, Sun Mingxia, Tang Yan-Dong, Wang Haiwei, Wang Shujie, Cai Xuehui, Lu Yu, An Tongqing, Yang Yongbo, Meng Fandan
State Key Laboratory for Animal Disease Control and Prevention, Harbin Veterinary Research Institute of Chinese Academy of Agricultural Sciences, Harbin, China.
Institute of Veterinary Immunology and Engineering, Jiangsu Academy of Agricultural Sciences, Nanjing, China.
Front Vet Sci. 2024 Sep 3;11:1460973. doi: 10.3389/fvets.2024.1460973. eCollection 2024.
Virus-like particles (VLPs) are used as nanocontainers for targeted drug, protein, and vaccine delivery. The phage P22 VLP is an ideal macromolecule delivery vehicle, as it has a large exterior surface area, which facilitates multivalent genetic and chemical modifications for cell recognition and penetration. Arginine-rich cell-penetrating peptides (CPPs) can increase cargo transport efficiency . However, studies on the tissue distribution and retention of P22 VLPs mediated by TAT and 8R are lacking. This study aimed to analyze the TAT and 8R effects on the P22 VLPs transport efficiency and tissue distribution both and . We used a prokaryotic system to prepare P22 VLP self-assembled particles and expressed TAT-or 8R-conjugated mCherry on the VLP capsid protein as model cargoes and revealed that the level of P22 VLP-mCherry penetrating the cell membrane was low. However, both TAT and 8R significantly promoted the cellular uptake efficiency of P22 VLPs , as well as enhanced the tissue accumulation and retention of P22 VLPs . At 24 h postinjection, TAT enhanced the tissue distribution and retention in the lung, whereas 8R could be better accumulation in brain. Thus, TAT was superior in terms of cellular uptake and tissue accumulation in the P22 VLPs delivery system. Understanding CPP biocompatibility and tissue retention will expand their potential applications in macromolecular cargo delivery.
病毒样颗粒(VLPs)被用作靶向药物、蛋白质和疫苗递送的纳米容器。噬菌体P22 VLP是一种理想的大分子递送载体,因为它具有较大的外表面积,便于进行多价基因和化学修饰以实现细胞识别和穿透。富含精氨酸的细胞穿透肽(CPPs)可以提高货物运输效率。然而,关于由TAT和8R介导的P22 VLPs的组织分布和滞留情况的研究尚缺乏。本研究旨在分析TAT和8R对P22 VLPs运输效率和组织分布的影响。我们使用原核系统制备P22 VLP自组装颗粒,并在VLP衣壳蛋白上表达与TAT或8R偶联的mCherry作为模型货物,结果显示P22 VLP-mCherry穿透细胞膜的水平较低。然而,TAT和8R均显著促进了P22 VLPs的细胞摄取效率,同时增强了P22 VLPs在组织中的积累和滞留。注射后24小时,TAT增强了在肺中的组织分布和滞留,而8R在脑中的积累效果更好。因此,在P22 VLPs递送系统中,TAT在细胞摄取和组织积累方面表现更优。了解CPP的生物相容性和组织滞留情况将拓展它们在大分子货物递送中的潜在应用。